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Updated: Jun 14, 2025

A 3D Organotypic Melanoma Spheroid Skin Model
Published on: May 18, 2018
The Dynamically Evolving Cell States and Ecosystem from Benign Nevi to Melanoma
Xin Li1,2,3,4,5, Xiyuan Zhang1, Shuang Zhao1
1Hunan Key Laboratory of Skin Cancer and Psoriasis, Department of Dermatology, Hunan Engineering Research Center of Skin Health and Disease, Xiangya Hospital, Central South University, Changsha, China.
Purpose:
Approximately 30% of nonchronically sun-damaged melanomas originate from nevi, yet the dynamic changes and crucial mechanisms driving the transition from benign nevi to melanoma remain elusive.
Experimental Design:
In this study, we performed single-cell transcriptome sequencing on multiple paired tissue sites from five patients diagnosed with melanoma arising in congenital melanocytic nevi, identifying four distinct states of melanocyte subpopulations during the progression from nevi to melanoma, characterized by dynamic changes in their functions and regulatory pathways.
Results:
In the nevi state, IFN regulatory factor 1 was specifically upregulated in melanocytes, fibroblasts, and endothelial cells, potentially activating immune surveillance in the microenvironment. Conversely, the critical inhibitory checkpoint HLA-E for NK cells exhibited high expression in a cluster of malignant melanocytes and fibroblasts enriched in melanoma. This interaction with ligands expressed in NK cells could potentially serve as a key factor, leading to immune evasion. In malignant melanoma samples, we detected high expression of midkine in melanocytes. It is a pivotal factor that facilitates melanoma invasion and malignant transformation, potentially through interaction with endothelial cells to stimulate angiogenesis. The targets identified in our study are crucial factors in detecting the malignant transformation of nevi. Ultimately, we developed a malignant progression model capable of predicting patient prognosis and malignant progression status using bulk RNA sequencing data.
Conclusions:
Our study provides a high-resolution atlas of the malignant transformation of melanoma from nevi and highlights potential targets for further investigation.
Insights
This study reveals four melanocyte states during nevus to melanoma progression. Key molecular targets like midkine and immune checkpoints were identified, aiding in predicting melanoma malignancy.
Area of Science:
- Oncology
- Dermatology
- Immunology
Background:
- Melanoma arises from nevi in approximately 30% of cases.
- Mechanisms driving nevus to melanoma transition are not fully understood.
Purpose of the Study:
- To elucidate dynamic changes during nevus to melanoma progression.
- To identify molecular mechanisms and potential therapeutic targets.
Main Methods:
- Single-cell transcriptome sequencing of paired nevus and melanoma tissues.
- Analysis of melanocyte subpopulations and their functional states.
- Development of a predictive model using bulk RNA sequencing data.
Main Results:
- Identified four distinct melanocyte states during malignant transformation.
- Upregulation of IFN regulatory factor 1 in nevi, potentially enhancing immune surveillance.
- High expression of HLA-E in malignant melanoma, suggesting immune evasion via NK cell inhibition.
- Increased midkine expression in malignant melanocytes, promoting invasion and angiogenesis.
Conclusions:
- Provides a high-resolution atlas of melanoma malignant transformation from nevi.
- Highlights potential molecular targets for early detection and intervention.
- Developed a model for predicting patient prognosis and malignant progression.
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